Home
Class 12
PHYSICS
Two rods are joined between fixed suppor...

Two rods are joined between fixed supports as shown in the figure. Condition for no change in the length of individual rods with the increase of temperature will be
`"(" alpha_(1), alpha_(2)=` linear expansion coefficient
`A_(1), A_(2)=` Area of rods
`Y_(1), Y_(2)=` Young modulus `")"`

A

(a)`(A_(1))/(Q_(2))=(alpha_(1)Y_(1))/(alpha_(2)Y_(2))`

B

(b)`(A_(1))/(A_(2))=(L_(1)alpha_(1)Y_(1))/(L_(2)alpha_(2)Y_(2))`

C

(c)`(A_(1))/(A_(2))=(L_(2)alpha_(2)Y_(2))/(L_(1)alpha_(1)Y_(1))`

D

(d)`(A_(1))/(A_(2))=(alpha_(2)Y_(2))/(alpha_(1)Y_(1))`

Text Solution

Verified by Experts

The correct Answer is:
D

`Y=("Stress")/("Strain")=(T//A)/(Deltal//l)," "T=(Y.Deltal)/(l)A=Y.A alpha DeltaT`
In both the rods tension will be same so
`T_(1)=T_(2)`
Hence `Y_(1)A_(1) alpha_(1) DeltaT=Y_(2)A_(2)alpha_(2)DeltaT, (A_(1))/(A_(2))=(Y_(2)alpha_(2))/(Y_(1)alpha_(1))`
Promotional Banner

Topper's Solved these Questions

  • JEE MAIN REVISION TEST - 28

    VMC MODULES ENGLISH|Exercise PHYSICS (SECTION-2)|5 Videos
  • JEE MAIN REVISION TEST - 27 - JEE -2020

    VMC MODULES ENGLISH|Exercise PHYSICS (SECTION 2)|5 Videos
  • JEE MAIN REVISION TEST - 29 (2020)

    VMC MODULES ENGLISH|Exercise PHYSICS|25 Videos

Similar Questions

Explore conceptually related problems

The variation of lengths of two moles rods A and B with change in temperature is shown in figure . The ratio of (alpha_(a))/(alpha_(B)) is :-

Two rods of different materials having coefficient of thermal expansion alpha_(1), alpha_(2) and young's modulii Y_(1) ,Y_(2) respectively are fixed between two rigid massive walls. The rods are heated such that they undergo the same increase in temperature. There is no bending of rods. If alpha_(1) :alpha_(2)=2 : 3 , the thermal stresses developed in the two rods are equal provided Y_(1) : Y_(2) is equal to

Two rods of different materials having coefficient of thermal expansion alpha_(1), alpha_(2) and young's modulii Y_(1) ,Y_(2) respectively are fixed between two rigid massive walls. The rods are heated such that they undergo the same increase in temperature. There is no bending of rods. If alpha_(1) :alpha_(2)=2 : 3 , the thermal stresses developed in the two rods are equal provided Y_(1) : Y_(2) is equal to

Two rods of different materials having coefficient of thermal expansion alpha_(1), alpha_(2) and young's modulii Y_(1) ,Y_(2) respectively are fixed between two rigid massive walls. The rods are heated such that they undergo the same increase in temperature. There is no bending of rods. If alpha_(1) :alpha_(2)=2 : 3 , the thermal stresses developed in the two rods are equal provided Y_(1) : Y_(2) is equal to

Two steel rods and an aluminium rod of equal length l_0 and equal cross- section are joined rigidly at their ends as shown in the figure below. All the rods are in a state of zero tension at 0^@ C . Find the length of the system when the temperature is raised to theta . Coefficient of linear expansion of aluminium and steel are alpha_(a) and alpha_(s) respectively. Young's modulus of aluminium is Y_(a) and of steel is Y_(s) .

Two rods of equal cross sections, one of copper and the other of steel, are joined to form a composite rod of length 2.0 m at 20^@C , the length of the copper rod is 0.5 m. When the temperature is raised to 120^@C , the length of composite rod increases to 2.002m. If the composite rod is fixed between two rigid walls and thus not allowed to expand, it is found that the lengths of the component rods also do not change with increase in temperature. Calculate Young's moulus of steel. (The coefficient of linear expansion of copper, alpha_c=1.6xx10^(-5@)C and Young's modulus of copper is 1.3xx10^(13)N//m^(2) ).

Two steel rods and an aluminum rod of equal length l_0 and equal cross section are joined rigidly at their ends as shown in the figure below. All the rods are in a state of zero tension at 0^@C . Find the length of the system when the temperature is raised to theta . Coefficient of linear expansion of aluminum and steel are alpha_a and alpha_s respectively. Young's modulus of aluminum is Y_a and of steel is Y_s .

Two rods of equal cross sections area are joined end the end as shown in figure. These are supported between two rigid vertical walls. Initially the rods are unstrained . If temperature of system is increased by DeltaT then shifting in junction if junction if Y_(1)alpha_(1) gt Y_(2)alpha_(2) is given by -

Two rods of different materials having coefficients of thermal expansion alpha_1 , alpha_2 and Young's modulii Y_1 , Y_2 respectively are fixed between two rigid massive walls. The rods are heated such that they undergo the same increase in temperature. There is no bending of the rods. If alpha_1:alpha_2=2:3 , the thermal stresses developed in the two rods are equal provided Y_1:Y_2 is equal to

Two rods of different materials are placed between massive walls as shown in figure. The cross section of the rods is A, their moduil of elastricity are E_(1) and E_(2) respectively. If rods are heated by t degrees, then (coefficients of liner expansion of material of rods are alpha_(1) and alpha_(2) respectively)